| 2012 | ||
|---|---|---|
| j8 | Shunji Satoh: Computational identity between digital image inpainting and filling-in process at the blind spot. Neural Computing and Applications 21(4): 613-621 (2012) | |
| c11 | Akira Egashira, Shunji Satoh, Hidetsugu Irie, Tsutomu Yoshinaga: Parallel Numerical Simulation of Visual Neurons for Analysis of Optical Illusion. ICNC 2012: 130-136 | |
| 2011 | ||
| j7 | Tadashi Yamazaki, Hidetoshi Ikeno, Yoshihiro Okumura, Shunji Satoh, Yoshimi Kamiyama, Yutaka Hirata, Keiichiro Inagaki, Akito Ishihara, Takayuki Kannon, Shiro Usui: Simulation Platform: A cloud-based online simulation environment. Neural Networks 24(7): 693-698 (2011) | |
| j6 | Tadashi Yamazaki, Hidetoshi Ikeno, Yoshihiro Okumura, Shunji Satoh, Yoshimi Kamiyama, Yutaka Hirata, Keiichiro Inagaki, Akito Ishihara, Takayuki Kannon, Shiro Usui: Reprint of: Simulation Platform: A cloud-based online simulation environment. Neural Networks 24(9): 927-932 (2011) | |
| c10 | Junichi Ohmura, Akira Egashira, Shunji Satoh, Takefumi Miyoshi, Hidetsugu Irie, Tsutomu Yoshinaga: Multi-GPU Acceleration of Optical Flow Computation in Visual Functional Simulation. ICNC 2011: 228-234 | |
| 2010 | ||
| j5 | Hiroaki Sasaki, Shunji Satoh, Shiro Usui: Neural implementation of coarse-to-fine processing in V1 simple neurons. Neurocomputing 73(4-6): 867-873 (2010) | |
| c9 | Hiroaki Sasaki, Shunji Satoh, Shiro Usui: Efficient Representation by Horizontal Connection in Primary Visual Cortex. ICONIP (1) 2010: 132-139 | |
| 2009 | ||
| j4 | Hiroaki Sasaki, Shunji Satoh: Super resolution: Another computational role of short-range horizontal connection in the primary visual cortex. Neural Networks 22(4): 362-372 (2009) | |
| c8 | Shiro Usui, Keiichiro Inagaki, Takayuki Kannon, Yoshimi Kamiyama, Shunji Satoh, Nilton Liuji Kamiji, Yutaka Hirata, Akito Ishihara, Hayaru Shouno: A Next Generation Modeling Environment PLATO: Platform for Collaborative Brain System Modeling. ICONIP (1) 2009: 84-90 | |
| 2007 | ||
| c7 | Shunji Satoh, Shiro Usui: Computational Understanding and Modeling of Filling-In Process at the Blind Spot. ICONIP (1) 2007: 943-952 | |
| c6 | Shunji Satoh, Shiro Usui: Engineering-Approach Accelerates Computational Understanding of V1-V2 Neural Properties. ICONIP (1) 2007: 1051-1060 | |
| 2006 | ||
| j3 | Shunji Satoh: A visual model for object detection based on active contours and level-set method. Biological Cybernetics 95(3): 259-270 (2006) | |
| 2004 | ||
| j2 | Shunji Satoh, Shogo Miyake: A model of overt visual attention based on scale-space theory. Systems and Computers in Japan 35(10): 1-13 (2004) | |
| 2003 | ||
| c5 | Shunji Satoh, Shogo Miyake: A Model for Selective Visual Attention Based on Discrete Scale-Spaces. KES 2003: 147-154 | |
| 2002 | ||
| c4 | Masao Shimomura, Shunji Satoh, Shogo Miyake, Hirotomo Aso: A Neural Network Model for Pattern Recognition Based on Hypothesis and Verification with Moving Region of Attention. ICANN 2002: 1275-1280 | |
| 2001 | ||
| c3 | Shunji Satoh, Shogo Miyake, Hirotomo Aso: Neocognitron-Type Network for Recognizing Rotated and Shifted Patterns with Reduction of Resources. IWANN (1) 2001: 215-222 | |
| 1999 | ||
| j1 | Shunji Satoh, Jousuke Kuroiwa, Hirotomo Aso, Shogo Miyake: A rotation-invariant neocognitron. Systems and Computers in Japan 30(4): 31-40 (1999) | |
| c2 | Shunji Satoh, Hirotomo Aso, Shogo Miyake, Jousuke Kuroiwa: Pattern Recognition System with Top-Down Process of Mental Rotation. IWANN (1) 1999: 816-825 | |
| 1998 | ||
| c1 | Shunji Satoh, Jousuke Kuroiwa, Hirotomo Aso, Shogo Miyake: Recognition of Hand Written Patterns by Rotation-Invariant Neocognitron. ICONIP 1998: 295-299 | |
Colors in the list of coauthors
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